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用于心肌组织工程的无细胞心脏细胞外基质支架的构建。

Construction of scaffolds composed of acellular cardiac extracellular matrix for myocardial tissue engineering.

作者信息

Esmaeili Pourfarhangi Kamyar, Mashayekhan Shohreh, Asl Sasan Ghanbari, Hajebrahimi Zahra

机构信息

Department of Chemical and Petroleum Engineering, Sharif University of Technology, Tehran, 11365-8639, Iran; Bioengineering Department, Temple University, 19122 Philadelphia, Pennsylvania, United States.

Department of Chemical and Petroleum Engineering, Sharif University of Technology, Tehran, 11365-8639, Iran.

出版信息

Biologicals. 2018 May;53:10-18. doi: 10.1016/j.biologicals.2018.03.005. Epub 2018 Apr 3.

Abstract

High rates of mortality and morbidity stemming from cardiovascular diseases unveil extreme limitations in current therapies despite enormous advances in medical and pharmaceutical sciences. Following myocardial infarction (MI), parts of myocardium undergo irreversible remodeling and is substituted by a scar tissue which eventually leads to heart failure (HF). To address this issue, cardiac patches have been utilized to initiate myocardial regeneration. In this study, a porous cardiac patch is fabricated using a mixture of decellularized myocardium extracellular matrix (ECM) and chitosan (CS). Results of rheological measurements, SEM, biodegradation test, and MTT assay showed that the scaffold composed of 3.5% (w/w) CS and 0.5% ECM has the best potential in providing cardiac progenitor cells (CPCs) with a suitable microenvironmental condition for both attachment and growth. This study demonstrates that the fabricated scaffold is capable of transmitting both mechanical and chemical cues that is native to myocardial tissue and supports efficient growth of the CPCs.

摘要

尽管医学和制药科学取得了巨大进步,但心血管疾病导致的高死亡率和高发病率揭示了当前治疗方法的极端局限性。心肌梗死(MI)后,部分心肌会发生不可逆的重塑,并被瘢痕组织替代,最终导致心力衰竭(HF)。为了解决这个问题,人们利用心脏补片来启动心肌再生。在本研究中,使用脱细胞心肌细胞外基质(ECM)和壳聚糖(CS)的混合物制备了一种多孔心脏补片。流变学测量、扫描电子显微镜、生物降解测试和MTT分析结果表明,由3.5%(w/w)CS和0.5% ECM组成的支架在为心脏祖细胞(CPCs)提供适合附着和生长的微环境条件方面具有最佳潜力。本研究表明,制备的支架能够传递心肌组织固有的机械和化学信号,并支持CPCs的有效生长。

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